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Pilots’ Attention Distributions Between Chasing a Moving Target and a Stationary Target

机译:飞行员的注意力分布在追逐移动目标和静止目标之间

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摘要

Introduction: Attention plays a central role in cognitive processing; ineffective attention may induce accidents in flight operations. The objective of current research was to examine military pilots’ attention distributions between chasing a moving target and a stationary target. Method: Thirty-seven mission-ready F-16 pilots participated in the current research. Subjects’ eye movements were collected by a portable head-mounted eye-tracker during tactical training in a flight simulator. The scenarios of chasing a moving target (air-to-air) and a stationary target (air-to-surface) consist of three operational phases; searching, aiming and lock-on to the targets. Results: The findings demonstrated significant differences in pilots’ percentage of fixation during searching phase between air-to-air (M=37.57, SD=5.72) and air-to-surface (M=33.54, SD=4.68). Fixation duration can indicate pilots’ sustained attention to the trajectory of a dynamic target during dog-fight manoeuvers. Aiming for the stationary target with larger pupil size (M=27105 pixel2, SD=6565 pixel2) reflects higher cognitive loading than aiming to the dynamic target (M=23864 pixel2, SD=8762 pixel2). Discussion: Pilots’ visual behavior is not only closely related to attention distribution, but also significantly associated with task characteristics. Military pilots demonstrated various visual scan patterns for searching and aiming to different types of targets based on the research settings of flight simulator. The findings would facilitate system designers’ understandings of military pilots’ cognitive processes during tactical operations. It will assist human-centered interface design to improve pilots’ situational awareness. The application of an eye-tracking device integrated with a flight simulator is a feasible and cost-effective intervention to improve efficiency and safety of tactical training.
机译:简介:注意在认知处理中起着核心作用;无效的注意力可能会诱导飞行业务的事故。目前研究的目的是研究军事飞行员的注意力分布在追逐移动目标和静止目标之间。方法:三十七名任务准备的F-16飞行员参与了当前的研究。在飞行模拟器的战术训练期间,由便携式的头戴式追踪器收集受试者的眼球运动。追逐移动目标(空到空气)和固定目标(空气到表面)的场景由三个操作阶段组成;搜索,瞄准和锁定目标。结果:该研究结果表明,在空到空气(M = 37.57,SD = 5.72)和空对地(M = 33.54,SD = 4.68)之间搜索期间的固定百分比的显着差异。固定持续时间可以指示飞行员在狗斗争中的动态目标的轨迹持续注意。针对具有较大瞳孔尺寸的静止目标(M = 27105像素2,SD = 6565像素2)反映了比瞄准动态目标的认知载量更高(M = 23864像素2,SD = 8762像素2)。讨论:飞行员的视觉行为不仅与关注分布密切相关,而且与任务特征显着相关。军事飞行员展示了各种可视扫描模式,用于根据飞行模拟器的研究设置搜索和旨在针对不同类型的目标。调查结果将促进系统设计人员在战术业务期间对军事飞行员的认知过程的理解。它将协助以人为本的界面设计来提高飞行员的情境感知。与飞行模拟器集成的眼动跟踪装置的应用是一种可行且经济有效的干预,以提高战术训练的效率和安全性。

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